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ÇöÀçÀ§Ä¡ : HOME > ¸®Æ÷Æ® > ÀÚµ¿Â÷ > Àü±âÀÚµ¿Â÷
Electric Boats, Small Submarines and Autonomous Underwater Vehicles (AUV) 2014-2024
¹ßÇà»ç IDTechEx

¹ßÇàÀÏ 2015-02
ºÐ·® 206 pages
¼­ºñ½ºÇüÅ Report
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Table of Contents

1. EXECUTIVE SUMMARY AND CONCLUSIONS
1.1. The whole picture
1.1.1. Global marine EV forecasts 2013-2024
1.2. Market drivers and centers of excellence
1.2.1. AUV market
1.2.2. Marine EVs compared to all EVs
1.3. Forecast rationale
1.4. Benefits of marine electric vehicles
1.4.1. Price sensitivity
1.4.2. Favoured Marine EV Technologies
1.4.3. Examples of backup data
1.5. Latest view from Europe
1.6. Power electronics lessons from Battery Osaka, PV Expo, Smart Grid Expo Sept 3-5 2014, Osaka, Japan
1.7. Lessons from Electric and Hybrid Marine World Expo June 2014, Amsterdam
1.8. Effect of 2015 oil price collapse on electric vehicles
2. INTRODUCTION
2.1. Definitions and scope of this report
2.2. The EV value chain
2.3. Benefits of marine electric vehicles
2.4. Pure electric marine vehicles
2.5. Hybrid marine vehicles
2.6. Born electric
2.7. New structural advances and smart skin
2.8. Electric outboard motors
2.8.1. Regen Nautic Inc USA
2.8.1. Outboard motor market size
2.8.2. Oceanvolt SD electric saildrive system wins Pittman Innovation Award
2.9. Tightening air pollution laws boost e-ships
2.10. The death of coal and oil boost EVs
3. SURFACE CRAFT
3.1. Commonality with land EVs
3.1.1. Grants for land and water
3.1.2. Effect of land EV manufacturers entering marine
3.1.3. Pollution laws back electric boats - India, Europe, Taiwan, USA
3.2. Small electric surface craft
3.2.1. Andaman and Electric Boats Thailand
3.2.2. aquawatt Mechatronik und Yachtbau Austria
3.2.3. Bionx Austria, Canada
3.2.4. Boesch Boats for water skiing Switzerland
3.2.5. Boote Marian luxury inland boats Austria
3.2.6. CleaneMarine Denmark
3.2.7. Duffy inland electric deck boats, USA
3.2.8. Epic Wakeboats hybrid sport boat USA
3.2.9. Erun GmbH inland sport boats Switzerland
3.2.10. Kona USA
3.2.11. Leisure Life USA
3.2.12. MarineKart Switzerland
3.2.13. Mercedes Germany
3.2.14. Quadrofoil, Slovenia
3.2.15. Ruban Bleu France with 2013 interview
3.2.16. Seaway USA
3.2.17. Supiore Denmark
3.2.18. Tamarack Lake foldable inland boat USA
3.3. Large electric surface craft
3.3.1. ALU MARINE France with 2013 interview
3.3.2. Callender Designs UK
3.3.3. CAT hybrid powertrain USA
3.3.4. Corvus Energy Canada
3.3.5. DNV GL inland ferries go pure electric, Norway
3.3.6. Feadship, Netherlands
3.3.7. Ferguson's shipyard in Port Glasgow, UK
3.3.8. Foss Maritime Canada, USA
3.3.9. GE Power Conversion USA
3.3.10. Havyard to construct ICE platform supply vessel, Norway
3.3.11. Hydrogenics New York
3.3.12. Juliet Marine Systems USA
3.3.13. Kitegen Italy and Sauter UK
3.3.14. Larger solar lake boats Switzerland
3.3.15. MW Line Switzerland
3.3.16. SAFT - electrification of ferry boats
3.3.17. Sauter supertanker
3.3.18. SCOD / Atlantic Motors USA
3.3.19. Seagoing yachts France
3.3.20. Tag Yachts South Africa, New Zealand
3.3.21. Tugboats UK
3.3.22. Türanor PlanetSolar Germany
3.3.23. Unmanned boat gathering oil USA
3.3.24. Waternet The Netherlands
3.4. Electric flying boats
3.4.1. Equator Aircraft Norway
3.4.2. FlyNano Finland
3.4.3. Marine Unmanned Aerial Vehicles UAV
4. MANNED UNDERWATER ELECTRIC VEHICLES
4.1. Sea scooters for scuba divers, Italy, China
4.2. Leisure and tourist submarines
4.2.1. Kittredge UK
4.2.2. Odyssea USA
4.2.3. International Venture Craft USA
4.2.4. Hawkes Ocean Technologies USA
4.2.5. Silvercrest/UVI Canada, UK
4.2.6. Submarines that are efficient surface boats
4.2.7. US Submarines Inc USA
4.2.8. Will submarines fly?
5. AUTONOMOUS UNDERWATER VEHICLES (AUVS)
5.1. New applications in 2015
5.2. Swimmers vs gliders
5.2.1. Definitions
5.2.2. Demand
5.2.3. Gliders
5.2.4. Swimmers
5.3. Wave and sun powered sea gliders
5.3.1. Virginia Institute of Marine Science USA
5.3.2. Falmouth Scientific Inc USA
5.3.3. Liquid Robotics USA
5.4. AUV swimmers North America
5.4.1. MBARI USA
5.4.2. Florida Atlantic University USA
5.4.3. Hydroid USA
5.4.4. OceanServer Technology USA
5.5. AUV swimmers Europe
5.5.1. Kongsberg Norway
5.5.2. Teledyne USA, Iceland
5.5.3. Mine Destruction AUV UK
5.5.4. Autosub6000 UK
5.5.5. a.r.s Technologies GmbH Germany
5.5.6. Robot cuttlefish Switzerland
5.6. AUV swimmers East Asia
5.6.1. DRDO India
5.6.2. JAMSTEC Japan
5.7. Deploying AUVs Canada
5.8. Network of unmanned undersea platforms assist manned vessels
6. BIOMIMETIC UNMANNED UNDERWATER CRAFT
6.1. Robot jellyfish USA and Germany
7. MARINE DRIVE TRAINS, COMPONENTS AND INFRASTRUCTURE
7.1.1. EEI Italy Silent Propulsion System: Sailing boats as series hybrids
7.1.2. Drive trains
7.2. Traction batteries
7.2.1. The lure of lithium-ion
7.2.2. Cells - modules - battery packs
7.2.3. NiMH vs lithium
7.2.4. The ideal traction battery pack
7.2.5. Recent improvements
7.2.6. Traction batteries today
7.2.7. Trends in energy storage vs battery pack voltage
7.2.8. Move to high voltage
7.2.9. Many suppliers
7.2.10. Pouch problems?
7.2.11. The lure of lithium polymer versions of lithium-ion
7.2.12. Genuinely solid state traction batteries
7.2.13. New chemistries for lithium-ion batteries
7.2.14. Impediments
7.2.15. ABSL
7.2.16. SAFT
7.3. Range extenders
7.4. Fuel cells
7.5. Electric motors
7.5.1. New motors and outboards for boats
7.5.2. AC vs DC
7.6. Motor position
7.7. Charging infrastructure for marine EVs
7.7.1. General needs and solutions
7.8. Case study: Arctic under ice survey
7.9. MBARI research AUV deployment



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